DIN 45635-46-1985 Measurement of noise emitted by machines airborne noise emission enveloping surface method cooling towers《机器空气噪声的测量 空气噪声传播 包络面法 冷却塔》.pdf
《DIN 45635-46-1985 Measurement of noise emitted by machines airborne noise emission enveloping surface method cooling towers《机器空气噪声的测量 空气噪声传播 包络面法 冷却塔》.pdf》由会员分享,可在线阅读,更多相关《DIN 45635-46-1985 Measurement of noise emitted by machines airborne noise emission enveloping surface method cooling towers《机器空气噪声的测量 空气噪声传播 包络面法 冷却塔》.pdf(4页珍藏版)》请在麦多课文档分享上搜索。
1、 UDC 534.61 : 66.045.5 :534.835.46 DEUTSCHE NORM June 1985Measurement of noise emitted by machinesAirborne noise emissionEnveloping surface methodCooling towersDIN45635Part 46Gerauschmessung an Maschinen; Luftschallemission; HGllflachenVerfahren; KuhlturmeIn keeping with current practice in standard
2、s published by the International Organization for Standardization (ISO),a comma has been used throughout as the decimal marker.ContentIContinued on pages 2 to 4I MA/I/Natural-draught cooling tower,water flow rate:40 to 60 103 m3/hT Up to 160 mv30t040m4 InstrumentationAs specified in DIN 45635 Part 1
3、.Page7 Evaluation. 48 Precision and uncertainty ofmeasurement results . . . . . . . . . . . . . . . . . . 49 Test report . . . . . . . . . . . . . . . . . . . . . . . . 410 Report on results . . . . . . . . . . . . . . . . . . . 4Standards referred to . . . . . . . . . . . . . . . . . . . . 43 Termi
4、nology, quantitiesAs specified in DIN 45635 Part 1.5 Object under test and test conditions5.1 Object under testThe object under test is the cooling tower consisting ofthe structure (generally the cell or tower) with the fill(recooling element in the case of a dry cooling tower orthe trickle grids, w
5、ater distribution system and basin inthe case of wet cooling towers). If other noise generatorshave to be included in the object under test or parts ofthe installation are not to be included, a particularreference shall be made to this fact (see subclause 6.3).Typical cooling tower designs are shown
6、 in figure 1.Circular mechanical draughtcooling tower, water flow rate:15 to 20.103m3/h. . :Oto20m JKI-L+-:i!-L+-l-r+1JCell cooling tower,water flow rate:about 5000 m3/h per unitFigure 1. Comparison of sizes of the three most common types of cooling towerI_I;CoeZPage1 Scope and field of application.
7、 . . . . . . . . . . . 12 Designation 13 Terminology, quantities . . . . . . . . . . . . . . . . 1.5 4 Instrumentation 15 Object under test and test conditions. . . . . . . 16 Test procedure . . . . . . . . . . . . . . . . . . . . . . 3“c:c:.CJ- en l:.Qf;-gZE.:Q,) :e?Q.LLc:-.0ogQJ:CuJ: t-1Beuth Verl
8、ag GmbH, Berlin. has the exclusive right of sale for German Standards (OIN-Normen).10.87DIN 45635 Part 46 Engl. Price group 5Sales No. 0105Page 2 DIN 45 635 Part 465.2 Operating condition of cooling tower(main operating condition)The measurement shall be made at rated load (ratedvolume flow of fans,
9、 if used, rated water flow rate andrated cooling power). In the case of natural-draught drycooling towers, the measurement shall be made at atemperature close to the design temperature, i.e. at therated cooling power 1) and rate of water flow throughthe cooling elements.5.3 Test siteMeasurement shal
10、l be carried out on site.5.4 Measurement surface and measuring pointsThe noise is radiated from cooling towers mainly throughthe air outlet and the air inlet and from the fan motorswhere these are fitted. If the level of noise radiated fromthe walls or the shell (particularly from diffuser walls) is
11、not low enough to be ignored, appropriate measurementsurfaces and arrangements of the measuring points shallbe defined. For separate determination of the partialsound power levels for each partial sound source, measure ment surfaces shall be defined and the measuring pointslying on them arranged as
12、shown in figures 2 and 3.In the case of large-size wet cooling towers, the soundpower passing through the air outlet is caused mainlyby the noise of the water distribution system and,because of sound absorption in the damp air, it dependson the height of the cooling tower, H, and on theformation of
13、water vapour inside the cooling tower.Since the latter is subject to substantial variationsaccording to weather conditions, the sound powerpassing through a measurement surface above theeliminator represents a better measure of noise emissionfor the purposes of ensuring comparability betweendifferen
14、t cooling towers and reproducibility of the testresults, than the sound power emerging directly throughthe air outlet. The measurement surface and the measuringpoints shell therefore be arranged above the eliminatorplate as shown in figure 3.Note. In the case of wet natural-draught cooling towers,th
15、e A-weighted partial sound power level at theair outlet is approximately (0,14H) dB lowerthan the A-weighted partial sound power leveldetermined by the method specified in thisstandard for the plane above the water distribu tion system, with H in m. This approximationdoes not take account of weather
16、-dependentfluctuations. Because of the directivity charac teristic of the radiation, the A-weighted partialsound power level so estimated for the air outletcannotautomatically be regarded as the A-weightedimmision-relevant sound power level.1) In some cases, cold operation is adequate for noisemeasu
17、rement if it can be taken from preliminaryinvestigations that the effect of the cooling power onthe test results is less than 1 dB. In such a case, a noteto this effect shall be included in the test report.Measurement surface for suction opening No.1,measurement surface area 81 equal to a . b + (2a
18、+ b) . cb1m-+- Measurement surface above air outlet, with. . -measurement surface area 83 equal to 2 1t r2A4 measuring points arranged on the circumference for. “, 83 (70il80)Measurement surface above fan casing, withmeasurement surface area 85equal to 2 n: r h2(4 measuring points arranged in each o
19、f three1m: measurement planes)For measurement surface for fan motor andmeasurement surface 84, see DIN 45635 Part 1, Section A-BApril 1984 edition, figure A.l.l2. l2. b4 4 I;Measurement surface for air inlet No.2,measurement surface area 82 equal to 81DiffuserFigure 2. Measurement surfaces and measu
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